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HDAC inhibition induces transient phenotypic inertia in dormant OCCC spheroids by derepression of cell cycle genes

GSE320019 Homo sapiens Expression profiling by high throughput sequencing 8 samples Submitted 2026/05/15 Platform GPL34284
Summary
Multicellular cancer cell aggregates, termed spheroids, are anoikis-resistant, avascular, heterogeneous structures responsible for transcoelomic metastasis of ovarian clear cell carcinoma (OCCC). OCCC is a rare subtype of ovarian cancer with high ARID1A gene mutation rates, resulting in genome-wide changes to H3K27Ac levels and histone deacetylase (HDAC) function. Our study investigated the utility of HDAC inhibitor (HDACi) treatment and H3K27Ac dynamics in OCCC spheroids. By comparing KOC-7c and 105C OCCC cell lines, which have opposing abilities to proliferate as spheroids, we revealed that KOC-7c and 105C spheroids differentially regulate H3K27Ac levels, which correlates with the sensitivity of KOC-7c and the resistance of 105C spheroids to H3K27Ac-altering HDACi treatment. RNA-seq of Entinostat-treated versus vehicle-treated spheroids resulted in a dramatic change in the 105C spheroid transcriptome such that it more closely resembled the proliferative KOC-7c transcriptome over the short term. Comparative pathway analysis identified preferential de-repression of a G2/M checkpoint gene program in 105C spheroids upon Entinostat treatment when compared directly to the KOC-7c spheroids. Our results suggest the utility of HDACi in OCCC as highly context dependent.
Published in
HDAC Inhibition Induces Transient Phenotypic Inertia in Dormant OCCC Spheroids by Derepression of Cell Cycle Genes
Cheng S, Kolendowski B, Ramos-Valdes Y et al. · Cells 2026 · PMID 42041541 · doi:10.3390/cells15080673
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Also filed as BioProject PRJNA1425993 and SRA study SRP678262. Searching any of these in the dataset finder brings you back here.

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